Influence of fecal collection conditions and 16S rRNA gene sequencing at two centers on human gut microbiota analysis

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Last updated 10 novembro 2024
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Microbiome and Human Health: Current Understanding, Engineering, and Enabling Technologies
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Primer, Pipelines, Parameters: Issues in 16S rRNA Gene Sequencing
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Establishment and assessment of an amplicon sequencing method targeting the 16S-ITS-23S rRNA operon for analysis of the equine gut microbiome
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Fecal metabonomics combined with 16S rRNA gene sequencing to analyze the changes of gut microbiota in rats with kidney-yang deficiency syndrome and the intervention effect of You-gui pill - ScienceDirect
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Frontiers Current Sampling Methods for Gut Microbiota: A Call for More Precise Devices
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Evaluation of 16S rRNA gene sequencing for species and strain-level microbiome analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Frontiers Integrated 16S rRNA Sequencing, Metagenomics, and Metabolomics to Characterize Gut Microbial Composition, Function, and Fecal Metabolic Phenotype in Non-obese Type 2 Diabetic Goto-Kakizaki Rats
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing at two centers on human gut microbiota analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Identification of shared and disease-specific host gene–microbiome associations across human diseases using multi-omic integration
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
The impact of storage conditions on human stool 16S rRNA microbiome composition and diversity [PeerJ]
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Full-length 16S rRNA gene amplicon analysis of human gut microbiota using MinION™ nanopore sequencing confers species-level resolution, BMC Microbiology
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing protocols at two centers on human gut microbiota analysis
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
16S-FASAS: an integrated pipeline for synthetic full-length 16S rRNA gene sequencing data analysis [PeerJ]
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
Human Brain Mapping, Neuroimaging Journal
Influence of fecal collection conditions and 16S rRNA gene sequencing at  two centers on human gut microbiota analysis
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